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Quantitative Acoustic Emissions Source Mechanisms Analysis of Soft and Competent Rocks through Micromechanics-Seismicity Coupled Modeling

机译:通过微机械地震性耦合建模的柔软能力岩石定量声学排放源机制分析

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摘要

This research studied seismic source mechanisms of acoustic emission (AE) events generated during the failure of intact and jointed rock samples using a microscale mechanical-seismicity coupled microscale model. During rock failure, forces and displacements around microcracks were measured in the model to determine seismic moment tensor. Interpretation of AE data was carried out by decomposing the moment tensor into a double couple (DC), a compensated linear vector dipole (CLVD), and isotropic component (ISO). In this study, microscale numerical models of Lac du Bonnet (LDB) granite (intact and jointed) and a Berea sandstone sample were built to represent the mechanical behavior of hard and soft rocks. Subsequently, several numerical triaxial tests under different confining pressures were conducted to analyze source mechanisms of AE events during rock failure. Numerical analysis shows the significant contribution of positive non-DC component during the LDB granite rock failure and significant DC component during the Berea rock failure. The source mechanisms of AE move to the negative non-DC component at higher confining for both granite and sandstone samples. Joint failure causes non-DC component toward crack opening at low confining pressure and a non-DC component toward crack closure events under higher confining pressure. Simulation results, presented in this work, show how micromechanical properties of rocks and joints as well as stress conditions give rise to different types of AE source mechanisms during rock failure. (c) 2020 American Society of Civil Engineers.
机译:本研究研究了使用微观机械地震性耦合微尺度模型在完整和关节岩石样品失败期间产生的声学发射(AE)事件的地震源机制。在岩石破坏期间,在模型中测量微裂纹周围的力和位移,以确定地震矩张量。通过将片刻张量分解成双对偶联(DC),补偿的线性载体偶极子(CLVD)和各向同性组分(ISO)来进行AE数据的解释。在这项研究中,建立了LACU DU BANNET(LDB)花岗岩(完整和接头)和伯雷砂岩样品的微观数值模型,以代表硬岩和软岩的机械性能。随后,进行了不同狭窄压力下的几种数值三轴试验,以分析岩石破坏期间AE事件的源机制。数值分析显示了在Berea岩石破坏期间LDB花岗岩岩石破坏和重要的DC分量期间正非DC组分的显着贡献。 AE的源机制在较高限制的花岗岩和砂岩样品中移动到负非直流分量。关节失效使非DC分量在低限制压力下裂缝开口,并且在较高限制压力下朝向裂纹闭合事件的非直流组分。在这项工作中提出的仿真结果,展示了岩石和关节的微机械特性以及岩石故障期间的不同类型的AE源机制。 (c)2020年美国土木工程师协会。

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  • 来源
    《International journal of geomechanics》 |2021年第3期|04020269.1-04020269.14|共14页
  • 作者单位

    Univ Wyoming Dept Chem & Petr Engn Laramie WY 82071 USA|Battelle Mem Inst Energy Div Columbus OH 43204 USA;

    Univ Wyoming Dept Chem & Petr Engn Laramie WY 82071 USA|Univ Wyoming Dept Chem Engn Laramie WY 82071 USA;

    Univ Wyoming Dept Chem & Petr Engn Laramie WY 82071 USA|Univ Waterloo Dept Civil & Environm Engn Waterloo ON N2L 3G1 Canada;

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